Madhushree Dutta

Grant Category: Fulbright-Nehru Doctoral Research Fellowships
Project Title: Elucidating the Role of Chloroplast Proton Gradient Regulation 5 in Modulating Photosynthetic Electron Transport under High-Temperature Stress in Potato (Solanum Tuberosum L.)
Field of Study: Agricultural Sciences
Home Institution: CSIR- Institute of Himalayan Bioresource Technology, Palampur, Himachal Pradesh
Host Institution: Purdue University , West Lafayette, IN
Grant Start Month: August 2024
Duration of Grant: Six months

Brief Bio:

Madhushree Dutta is a Ph.D. candidate at the CSIR-Institute of Himalayan Bioresource Technology, Palampur, India. She is dissecting complex gene regulatory networks underlying potato tuberization under high-temperature stress. In her doctoral thesis, she is implementing plant physiology, biochemistry, and molecular biology tools to investigate redox regulation in tuber development. Her key areas of research interest include plant stress physiology, climate change biology, and epigenomics. So far, she has published in reputed journals and participated in several science outreach events to communicate science to a broader audience.

Madhushree obtained her master’s degree in botany from the University of Calcutta. Her dissertation was on understanding the regulation of carbohydrate metabolism in rice cultivars under arsenic stress. Thereafter, she worked as a project scholar focusing on the utilization of brassica seed meal as a bioherbicide for weed management in wheat. Madhushree devotes time to teaching research aspirants through social media platforms, using smart strategies to make learning more interesting. Madhushree is a recipient of honorary awards including, the Max-Planck Gesellschaft Travel award, Dr. Parimal Kumar Roy Memorial award, and Dr. Ramendra Krishna Sarkar Memorial award for her excellent academic and research projects.

As a Fulbright-Nehru Doctoral Research fellow at Purdue University, West Lafayette, IN, Madhushree is exploring how the PGR5-dependent cyclic electron transport pathway operates under high-temperature stress to protect the photosynthetic apparatus of potatoes, translating into physiological fitness and improved tuber yield to ensure global food security.

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